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Clinical Trial Summary

Several randomized trials suggested a cardioprotective beneficial effect (eg reduction in cardiac troponin release) of remote ischemic preconditioning in cardiac surgery. Remote ischemic preconditioning by brief episodes of ischemia and reperfusion in a remote organ or vascular territory provides protection from injury by myocardial ischemia and reperfusion. In the translation of remote ischemic preconditioning from bench to bedside, the first proof of principle and small randomized controlled trials have shown a decreased release of myocardial biomarkers after aortic, congenital cardiac, adult valve and coronary artery by-pass graft surgery. This reduction in cardiac biomarkers release translated into better survival in a recent randomized trial performed in cardiac surgery. No clinical trial on remote ischemic preconditioning in non-cardiac surgery setting has been performed so far. The investigators study wants to test, for the first time, the hypothesis that remote ischaemic preconditioning is effective in reducing cardiac damage in high risk patients undergoing non-cardiac surgery. Remote ischaemic preconditioning will be achieved by inflation of a blood-pressure cuff to 200 mm Hg to the upper arm for 5 minutes, followed by 5 minutes reperfusion while the cuff will be deflated. General anesthesia will be induced and maintained without using propofol in both groups. Cardiac troponin will be used as marker of cardiac damage. If the results of a reduction in postoperative cardiac troponin release and perioperative cardiac ischaemic events will be confirmed in a non-cardiac surgery setting, the investigators could improve a strategy to prevent perioperative cardiac complication easy to apply, safe and low cost.


Clinical Trial Description

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Study Design


Related Conditions & MeSH terms


NCT number NCT02427867
Study type Interventional
Source Università Vita-Salute San Raffaele
Contact Giovanni Landoni, Prof.
Phone +39022643
Email landoni.giovanni@hsr.it
Status Recruiting
Phase N/A
Start date April 2015
Completion date February 2025

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